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Multiphase Structural Evolution of a Continental Margin During Obduction Orogeny: Insights From the Jebel Akhdar Dome, Oman Mountains

机译:引诱造山作用期间大陆边缘的多相结构演化:阿曼杰贝·阿赫达尔巨蛋的见解

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摘要

The structural evolution of the carbonate platform in the footwall of the Semail ophiolite emplaced onto the passive continental margin of Arabia helps to better understand the early stages of obduction-related orogens. These early stages are rarely observable in other orogens as they are mostly overprinted by later mountain building phases. We present an extensive structural analysis of the Jebel Akhdar anticline, the largest tectonic window of the Oman Mountains, and integrate it on different scales. Outcrop observations can be linked to plate motion data, providing an absolute timeframe for structural generations consistent with radiometric dating of veins. Top-to-S overthrusting of the Semail ophiolite and Hawasina nappes onto the carbonate platform during high plate convergence rates between Arabia and Eurasia caused rapid burial and overpressure, generation and migration of hydrocarbons, and bedding-confined veins, but no major deformation in the carbonate platform. At reduced convergence rates, subsequent tectonic thinning of the ophiolite took place above a top-to-NNE, crustal-scale ductile shear zone, deforming existing veins and forming a cleavage in clay-rich layers in early Campanian times. Ongoing extension occurred along normal- to oblique-slip faults, forming horst-graben structures and a precursor of the Jebel Akhdar dome (Campanian to Maastrichtian). This was followed by NE-SW oriented ductile shortening and the formation of the Jebel Akhdar dome, deforming the earlier structures. Thereafter, exhumation was associated with low-angle normal faults on the northern flank of the anticline. We correlate the top-to-NNE crustal-scale shear zone with a similar structure in the Saih Hatat window to develop a unified model of the tectonic evolution of the Oman Mountains.
机译:塞迈尔蛇绿岩底盘中碳酸盐台地的结构演化被置于阿拉伯的被动大陆边缘,有助于更好地了解与俯冲有关的造山带的早期阶段。这些早期阶段在其他造山带中很少能观察到,因为它们在后期的山区建设阶段大多被叠印。我们对Jebel Akhdar背斜线(阿曼山脉最大的构造窗口)进行了广泛的结构分析,并在不同尺度上进行了整合。露头观测可以与板块运动数据联系起来,为与放射线测年法一致的结构世代提供了绝对的时间框架。在阿拉伯和欧亚大陆之间的高板块汇聚速度期间,Semail蛇绿岩和Hawasina的自上而下的推覆作用推向了碳酸盐台地,造成了快速的埋藏和超压,碳氢化合物的生成和运移以及层理受限的脉动,但在岩心中没有大的变形。碳酸盐平台。在收敛速度降低的情况下,随后的蛇绿岩的构造变薄发生在坎彭时期早期,在一个顶面至北东向,地壳尺度的韧性剪切带之上,使现有的脉脉变形并在富含粘土的层中形成了裂隙。持续的延伸沿正常滑坡到斜滑断裂发生,形成了霍斯特-格拉本构造和杰贝勒·阿赫达尔穹顶的前兆(坎布里亚至马斯特里赫特)。随后是NE-SW定向的延展性缩短和Jebel Akhdar穹顶的形成,使早期结构变形。此后,发掘与背斜北侧的低角度正断层有关。我们将Saih Hatat窗口中顶部至NNE的地壳剪切带与相似的结构相关联,以开发出阿曼山脉构造演化的统一模型。

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  • 来源
    《Tectonics》 |2018年第4期|888-913|共26页
  • 作者单位

    Rhein Westfal TH Aachen, Inst Struct Geol Tecton & Geomech, EMR Grp, Aachen, Germany;

    Rhein Westfal TH Aachen, Inst Struct Geol Tecton & Geomech, EMR Grp, Aachen, Germany;

    Rhein Westfal TH Aachen, Inst Struct Geol Tecton & Geomech, EMR Grp, Aachen, Germany;

    Rhein Westfal TH Aachen, Inst Struct Geol Tecton & Geomech, EMR Grp, Aachen, Germany;

    Rhein Westfal TH Aachen, Inst Geol & Geochem Petr & Coal, EMR Grp, Aachen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    faults; ophiolite; boudinage; shear; Oman;

    机译:断层;蛇绿岩;地幔;剪切;阿曼;

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